The Initiation and Propagation of Fatigue Crack in Ni–Cr–Mo Martensitic Steel in Water
Author:
Affiliation:
1. Faculty of Engineering, Hiroshima University
2. Graduate School, Hiroshima University
Publisher
Japan Institute of Metals
Subject
General Engineering
Link
https://www.jstage.jst.go.jp/article/matertrans1960/17/11/17_11_726/_pdf
Reference8 articles.
1. 1) R. P. Wei and J. D. Landes: Mat. Res. Std., 9 (1969), 25.
2. 2) ASTM: Plane Strain Crack Toughness Testing of High Strength Metallic Materials, ASTM STP 410, (1967), 13.
3. 3) A. R. Jack and A. T. Price: Int. Journ. of Frac. Mech., 6 (1970), 401.
4. 4) K. Nakasa, H. Takei and S. Hirai: J. Soc. Materials Science Japan, 25 (1976), 296.
5. 5) A. R. Troiano: Trans. ASM, 52 (1960), 54.
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1. Crack Propagation Assisted with Hydrogen under Cyclic Stress in Ni–Cr–Mo Steel;Transactions of the Japan Institute of Metals;1986
2. AN ANALYSIS OF CRACK PROPAGATION BEHAVIOR IN STRESS CORROSION CRACKING UNDER REPEATING LOAD BY USING AN ASYMMETRICAL INTERNAL FRICTION MODEL;Fracture 84;1984
3. Mechanism of corrosion fatigue crack propagation in high strength steels;Engineering Fracture Mechanics;1983-01
4. An analysis of crack propagation velocity in delayed failure under repeating load using an internal friction model;Engineering Fracture Mechanics;1979-01
5. Effect of temperature on the frequency dependency of crack propagation velocity in delayed failure under cyclic load;Engineering Fracture Mechanics;1978-01
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